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316 lines
8 KiB
Ruby
316 lines
8 KiB
Ruby
#
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# $Id: 4c5f4311663b6d03050953d64d6a0e7905ff2216 $
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#
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# Copyright (c) 1999-2006 Minero Aoki
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#
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# This program is free software.
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# You can distribute/modify this program under the terms of
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# the GNU LGPL, Lesser General Public License version 2.1.
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# For details of LGPL, see the file "COPYING".
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#
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require 'racc/parser'
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unless Object.method_defined?(:funcall)
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class Object
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alias funcall __send__
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end
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end
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module Racc
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StateTransitionTable = Struct.new(:action_table,
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:action_check,
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:action_default,
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:action_pointer,
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:goto_table,
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:goto_check,
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:goto_default,
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:goto_pointer,
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:token_table,
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:reduce_table,
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:reduce_n,
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:shift_n,
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:nt_base,
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:token_to_s_table,
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:use_result_var,
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:debug_parser)
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class StateTransitionTable # reopen
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def StateTransitionTable.generate(states)
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StateTransitionTableGenerator.new(states).generate
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end
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def initialize(states)
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super()
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@states = states
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@grammar = states.grammar
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self.use_result_var = true
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self.debug_parser = true
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end
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attr_reader :states
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attr_reader :grammar
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def parser_class
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ParserClassGenerator.new(@states).generate
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end
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def token_value_table
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h = {}
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token_table().each do |sym, i|
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h[sym.value] = i
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end
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h
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end
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end
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class StateTransitionTableGenerator
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def initialize(states)
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@states = states
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@grammar = states.grammar
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end
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def generate
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t = StateTransitionTable.new(@states)
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gen_action_tables t, @states
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gen_goto_tables t, @grammar
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t.token_table = token_table(@grammar)
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t.reduce_table = reduce_table(@grammar)
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t.reduce_n = @states.reduce_n
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t.shift_n = @states.shift_n
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t.nt_base = @grammar.nonterminal_base
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t.token_to_s_table = @grammar.symbols.map {|sym| sym.to_s }
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t
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end
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def reduce_table(grammar)
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t = [0, 0, :racc_error]
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grammar.each_with_index do |rule, idx|
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next if idx == 0
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t.push rule.size
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t.push rule.target.ident
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t.push(if rule.action.empty? # and @params.omit_action_call?
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then :_reduce_none
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else "_reduce_#{idx}".intern
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end)
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end
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t
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end
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def token_table(grammar)
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h = {}
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grammar.symboltable.terminals.each do |t|
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h[t] = t.ident
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end
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h
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end
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def gen_action_tables(t, states)
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t.action_table = yytable = []
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t.action_check = yycheck = []
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t.action_default = yydefact = []
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t.action_pointer = yypact = []
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e1 = []
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e2 = []
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states.each do |state|
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yydefact.push act2actid(state.defact)
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if state.action.empty?
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yypact.push nil
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next
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end
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vector = []
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state.action.each do |tok, act|
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vector[tok.ident] = act2actid(act)
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end
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addent e1, vector, state.ident, yypact
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end
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set_table e1, e2, yytable, yycheck, yypact
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end
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def gen_goto_tables(t, grammar)
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t.goto_table = yytable2 = []
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t.goto_check = yycheck2 = []
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t.goto_pointer = yypgoto = []
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t.goto_default = yydefgoto = []
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e1 = []
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e2 = []
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grammar.each_nonterminal do |tok|
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tmp = []
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# decide default
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freq = Array.new(@states.size, 0)
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@states.each do |state|
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st = state.goto_table[tok]
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if st
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st = st.ident
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freq[st] += 1
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end
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tmp[state.ident] = st
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end
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max = freq.max
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if max > 1
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default = freq.index(max)
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tmp.map! {|i| default == i ? nil : i }
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else
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default = nil
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end
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yydefgoto.push default
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# delete default value
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tmp.pop until tmp.last or tmp.empty?
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if tmp.compact.empty?
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# only default
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yypgoto.push nil
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next
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end
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addent e1, tmp, (tok.ident - grammar.nonterminal_base), yypgoto
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end
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set_table e1, e2, yytable2, yycheck2, yypgoto
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end
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def addent(all, arr, chkval, ptr)
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max = arr.size
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min = nil
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arr.each_with_index do |item, idx|
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if item
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min ||= idx
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end
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end
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ptr.push(-7777) # mark
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arr = arr[min...max]
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all.push [arr, chkval, mkmapexp(arr), min, ptr.size - 1]
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end
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n = 2 ** 16
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begin
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Regexp.compile("a{#{n}}")
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RE_DUP_MAX = n
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rescue RegexpError
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n /= 2
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retry
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end
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def mkmapexp(arr)
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i = ii = 0
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as = arr.size
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map = ''
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maxdup = RE_DUP_MAX
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curr = nil
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while i < as
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ii = i + 1
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if arr[i]
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ii += 1 while ii < as and arr[ii]
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curr = '-'
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else
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ii += 1 while ii < as and not arr[ii]
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curr = '.'
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end
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offset = ii - i
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if offset == 1
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map << curr
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else
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while offset > maxdup
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map << "#{curr}{#{maxdup}}"
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offset -= maxdup
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end
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map << "#{curr}{#{offset}}" if offset > 1
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end
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i = ii
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end
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Regexp.compile(map, 'n')
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end
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def set_table(entries, dummy, tbl, chk, ptr)
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upper = 0
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map = '-' * 10240
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# sort long to short
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entries.sort! {|a,b| b[0].size <=> a[0].size }
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entries.each do |arr, chkval, expr, min, ptri|
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if upper + arr.size > map.size
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map << '-' * (arr.size + 1024)
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end
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idx = map.index(expr)
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ptr[ptri] = idx - min
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arr.each_with_index do |item, i|
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if item
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i += idx
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tbl[i] = item
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chk[i] = chkval
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map[i] = ?o
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end
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end
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upper = idx + arr.size
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end
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end
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def act2actid(act)
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case act
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when Shift then act.goto_id
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when Reduce then -act.ruleid
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when Accept then @states.shift_n
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when Error then @states.reduce_n * -1
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else
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raise "racc: fatal: wrong act type #{act.class} in action table"
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end
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end
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end
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class ParserClassGenerator
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def initialize(states)
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@states = states
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@grammar = states.grammar
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end
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def generate
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table = @states.state_transition_table
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c = Class.new(::Racc::Parser)
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c.const_set :Racc_arg, [table.action_table,
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table.action_check,
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table.action_default,
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table.action_pointer,
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table.goto_table,
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table.goto_check,
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table.goto_default,
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table.goto_pointer,
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table.nt_base,
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table.reduce_table,
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table.token_value_table,
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table.shift_n,
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table.reduce_n,
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false]
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c.const_set :Racc_token_to_s_table, table.token_to_s_table
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c.const_set :Racc_debug_parser, true
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define_actions c
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c
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end
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private
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def define_actions(c)
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c.module_eval "def _reduce_none(vals, vstack) vals[0] end"
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@grammar.each do |rule|
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if rule.action.empty?
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c.funcall(:alias_method, "_reduce_#{rule.ident}", :_reduce_none)
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else
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c.funcall(:define_method, "_racc_action_#{rule.ident}", &rule.action.proc)
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c.module_eval(<<-End, __FILE__, __LINE__ + 1)
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def _reduce_#{rule.ident}(vals, vstack)
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_racc_action_#{rule.ident}(*vals)
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end
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End
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end
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end
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end
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end
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end # module Racc
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